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The use of soluble organic matter (SOM) to promote plant nutrient bioavailability in bioregenerative life support systems

机译:使用可溶性有机物质(SOM)促进生物加工寿命支持系统中的植物营养生物利用度

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Although chemical methods have been proposed to remove soluble organic matter (SOM) from hydroponic solutions, it may be a benefit to retain this material to improve nutrient solution mineral bioavailability. Like chelates, SOM can enhance bioavailability by complexing nutrient ions, and thus, preventing precipitate formation. Iron phosphate is a common precipitate that forms in hydroponic and soil solutions. Initial studies have shown that wheat (Triticum aestivum L. cv. Apogee) plants grown in solution culture containing 35 μM Fe supplied as either FeCl_3 + HEDTA, or FeCl_3 + HA (commercial humic acid) resulted in comparable growth and seed yields. Leaf tissue Fe content was similar between treatments but Zn concentrations were greater in leaves grown with HA until 42 days, after which there were no treatment differences. Ongoing studies will isolate and chemically characterize the SOM obtained from bioreactor effluents and examine their role in nutrient bioavailability.
机译:虽然已经提出了化学方法以从水培溶液中除去可溶性有机物质(SOM),但是保留该材料可能有益,以提高营养溶液矿物生物利用度。如螯合物,SOM可以通过络合营养离子来增强生物利用度,从而防止沉淀地形成。磷酸铁是一种常见的沉淀,其在水培和土壤溶液中形成。初步研究表明,小麦(Triticum Aestivum L.CV.Poogee)植物生长在含有FeCl_3 + HEDTA的35μmFF的溶液培养物中生长,得到了FECL_3 + HEDTA或FECL_3 + HA(商业腐殖酸)导致了相当的生长和种子产率。叶组织Fe含量在治疗之间相似,但Zn浓度在用HA生长的叶片中较大,直至42天,之后没有治疗差异。正在进行的研究将分离和化学表征由生物反应器流出物中获得的SOM,并检查它们在营养生物利用度中的作用。

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